首页> 外文期刊>Pharmacology, Biochemistry and Behavior >The mania-like exploratory profile in genetic dopamine transporter mouse models is diminished in a familiar environment and reinstated by subthreshold psychostimulant administration.
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The mania-like exploratory profile in genetic dopamine transporter mouse models is diminished in a familiar environment and reinstated by subthreshold psychostimulant administration.

机译:在一个熟悉的环境中,遗传多巴胺转运蛋白小鼠模型中的躁狂样探索性特征有所减少,并且阈限以下的精神兴奋剂给药可恢复这种状态。

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Bipolar Disorder (BD) is a neuropsychiatric disorder characterized by symptoms ranging from a hyperactive manic state to depression, with periods of relative stability, known as euthymia, in between. Although prognosis for BD sufferers remains poor, treatment development has been restricted due to a paucity of validated animal models. Moreover, most models focus on the manic state of BD with little done to characterize the longitudinal behavior of these models. We recently presented two dopamine transporter (DAT) mouse models of BD mania: genetic (DAT knockdown; KD, mice) and pharmacological (the selective DAT inhibitor GBR 12909). These models exhibit an exploratory profile consistent with the quantified exploratory profile of manic BD patients observed in the cross-species translational test, the Behavioral Pattern Monitor (BPM). To further explore the suitability of these models, we examined the effects of reduced DAT function on the behavior of mice tested after familiarization to the BPM environment. Testing with 16mg/kg GBR 12909 in familiarized mice resulted in a consistent mania-like profile. In contrast, the mania-like profile of DAT KD mice disappears in a familiar environment, with partial reinstatement elicited by the introduction of novelty. In addition, we found that a subthreshold dose of GBR 12909 (9mg/kg) reinstated the mania-like profile in DAT KD mice without affecting wildtype behavior. Thus, the mania-like exploratory profile of DAT KD mice is reduced in a familiar environment, partially reinstated with novelty, but is fully restored when administered a stimulant that is ineffective in wildtype mice. These mice may provide a model of BD from mania to euthymia and back again with stimulant treatment. Acute blockade of the DAT by GBR 12909 however, may provide a consistent model for BD mania.
机译:躁郁症(BD)是一种神经精神疾病,其特征是症状从多动性躁狂状态到抑郁症,其间有相对稳定的时间,即所谓的胸膜炎。尽管BD患者的预后仍然很差,但是由于缺乏经过验证的动物模型,治疗的发展受到了限制。此外,大多数模型都集中在BD的躁狂状态上,而很少有研究来表征这些模型的纵向行为。我们最近介绍了BD躁狂症的两种多巴胺转运蛋白(DAT)小鼠模型:遗传(DAT敲低; KD,小鼠)和药理学(选择性DAT抑制剂GBR 12909)。这些模型显示出与在跨物种翻译测试“行为模式监视器(BPM)”中观察到的躁狂性BD患者的量化探索性轮廓一致的探索性轮廓。为了进一步探索这些模型的适用性,我们在熟悉BPM环境后检查了DAT功能降低对测试小鼠行为的影响。在熟悉的小鼠中用16mg / kg GBR 12909进行测试会产生一致的躁狂样症状。相比之下,DAT KD小鼠的躁狂样特征在熟悉的环境中消失,并且由于引入新颖性而引起部分恢复。此外,我们发现亚阈值剂量的GBR 12909(9mg / kg)在不影响野生型行为的情况下恢复了DAT KD小鼠的躁狂样特征。因此,在熟悉的环境中DAT KD小鼠的躁狂样探索性特征有所降低,部分被新颖性所恢复,但是当施用在野生型小鼠中无效的兴奋剂时,DAT KD小鼠的躁狂性探索性特征得以恢复。这些小鼠可能提供了从躁狂症到e病并再通过兴奋剂治疗返回的BD模型。但是,GBR 12909对DAT的急性阻断可能会为BD躁狂症提供一致的模型。

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